Efficiency testing of electric rotary actuators with non-standard reduction units for lower limb exoskeletons

The purpose of this paper is to develop a method and instruments for identifying the efficiency of an electric rotary actuator for an electromechanical orthosis of a lower limb exoskeleton, which greatly influences its weight and dimensions. The reduction units currently used as part of electric dri...

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Main Authors: Belogusev Vladimir, Egorov Aleksey
Format: Article
Language:English
Published: Institut za istrazivanja i projektovanja u privredi 2019-01-01
Series:Istrazivanja i projektovanja za privredu
Subjects:
Online Access:https://scindeks-clanci.ceon.rs/data/pdf/1451-4117/2019/1451-41171904496B.pdf
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spelling doaj-6dfd9b9ca1094c68811dfa93e9f5ae092021-04-02T06:52:08ZengInstitut za istrazivanja i projektovanja u privrediIstrazivanja i projektovanja za privredu1451-41171821-31972019-01-011744965031451-41171904496BEfficiency testing of electric rotary actuators with non-standard reduction units for lower limb exoskeletonsBelogusev Vladimir0Egorov Aleksey1Volga State University of Technology, Russian FederationVolga State University of Technology, Russian FederationThe purpose of this paper is to develop a method and instruments for identifying the efficiency of an electric rotary actuator for an electromechanical orthosis of a lower limb exoskeleton, which greatly influences its weight and dimensions. The reduction units currently used as part of electric drives for exoskeletons are made in accordance with a non-standard form factor design, which impedes the use of existing methods and tools for measuring their torque and performance without considerable errors caused by mechanical losses in the bearing assemblies of test equipment. The method proposed in this paper solves this problem by identifying the values of decelerating torque associated with friction between bearing elements. In the experimental part of this work, the proposed method and the measuring system were evaluated, and it was found that the measurement error was about 1.2%, which slightly exceeds the total level of random and systematic errors of instruments applied when measuring the desired values. On the basis of the obtained results, it is possible to conclude that the developed method can be used to control the efficiency of electric rotary actuators for exoskeletons both at the stage of their production and during their operation.https://scindeks-clanci.ceon.rs/data/pdf/1451-4117/2019/1451-41171904496B.pdfelectric drives performanceexoskeleton actuatorsbearing lossesexoskeleton efficiency controlreducer efficiency
collection DOAJ
language English
format Article
sources DOAJ
author Belogusev Vladimir
Egorov Aleksey
spellingShingle Belogusev Vladimir
Egorov Aleksey
Efficiency testing of electric rotary actuators with non-standard reduction units for lower limb exoskeletons
Istrazivanja i projektovanja za privredu
electric drives performance
exoskeleton actuators
bearing losses
exoskeleton efficiency control
reducer efficiency
author_facet Belogusev Vladimir
Egorov Aleksey
author_sort Belogusev Vladimir
title Efficiency testing of electric rotary actuators with non-standard reduction units for lower limb exoskeletons
title_short Efficiency testing of electric rotary actuators with non-standard reduction units for lower limb exoskeletons
title_full Efficiency testing of electric rotary actuators with non-standard reduction units for lower limb exoskeletons
title_fullStr Efficiency testing of electric rotary actuators with non-standard reduction units for lower limb exoskeletons
title_full_unstemmed Efficiency testing of electric rotary actuators with non-standard reduction units for lower limb exoskeletons
title_sort efficiency testing of electric rotary actuators with non-standard reduction units for lower limb exoskeletons
publisher Institut za istrazivanja i projektovanja u privredi
series Istrazivanja i projektovanja za privredu
issn 1451-4117
1821-3197
publishDate 2019-01-01
description The purpose of this paper is to develop a method and instruments for identifying the efficiency of an electric rotary actuator for an electromechanical orthosis of a lower limb exoskeleton, which greatly influences its weight and dimensions. The reduction units currently used as part of electric drives for exoskeletons are made in accordance with a non-standard form factor design, which impedes the use of existing methods and tools for measuring their torque and performance without considerable errors caused by mechanical losses in the bearing assemblies of test equipment. The method proposed in this paper solves this problem by identifying the values of decelerating torque associated with friction between bearing elements. In the experimental part of this work, the proposed method and the measuring system were evaluated, and it was found that the measurement error was about 1.2%, which slightly exceeds the total level of random and systematic errors of instruments applied when measuring the desired values. On the basis of the obtained results, it is possible to conclude that the developed method can be used to control the efficiency of electric rotary actuators for exoskeletons both at the stage of their production and during their operation.
topic electric drives performance
exoskeleton actuators
bearing losses
exoskeleton efficiency control
reducer efficiency
url https://scindeks-clanci.ceon.rs/data/pdf/1451-4117/2019/1451-41171904496B.pdf
work_keys_str_mv AT belogusevvladimir efficiencytestingofelectricrotaryactuatorswithnonstandardreductionunitsforlowerlimbexoskeletons
AT egorovaleksey efficiencytestingofelectricrotaryactuatorswithnonstandardreductionunitsforlowerlimbexoskeletons
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